Advanced Monolithic Systems

Size: px
Start display at page:

Download "Advanced Monolithic Systems"

Transcription

1 Advanced Monolithic Systems FEATURES Adjustable or Fixed Output 1.5, 2.5, 2.85, 3.0, 3.3, 3.5 and 5.0 Output Current of 10A Low Dropout, 500m at 10A Output Current Fast Transient Response Remote Sense 8A LOW DROPOUT OLTAGE REGULATORS RoHS compliant APPLICATIONS High Current Regulators Post Regulators for Switching Supplies Microprocessor Supply Adjustable Power Supply Notebook/Personal Computer Supplies GENERAL DESCRIPTION The series of adjustable and fixed low dropout voltage regulators are designed to provide 8A output current to power the new generation of microprocessors. The dropout voltage of the device is 100m at light loads and rising to 500m at maximum output current. A second low current input voltage 1 or greater then the output voltage is required to achieve this dropout. The can also be used as a single supply device. New features have been added to the : a remote Sense pin is brought out virtually eliminating output voltage variations due to load changes. The typical load regulation, measured at the Sense pin, for a load current step of 100mA to 8A is less than 1m. The series has fast transient response. The Adjust pin is brought out on fixed devices. To further improve the transient response the addition of a small capacitor on the Adjust pin is recommended. The series are ideal for generating processor supplies of 2 to 3 on motherboards where both 5 and 3.3 supplies are available. The devices are offered in 5 lead TO-220 and TO-263 (plastic DD) packages. ORDERING INFORMATION: PACKAGE E OPERATING JUNCTION 5 LEAD TO LEAD TO-220 TEMPERATURE RANGE CM CT 0 to 125 C CM-1.5 CT to 125 C CM-2.5 CT to 125 C CM-2.85 CT to 125 C CM-3.0 CT to 125 C CM-3.3 CT to 125 C CM-3.5 CT to 125 C CM-5.0 CT to 125 C PIN CONNECTIONS 5 LEAD TO FRONT IEW POWER CONTROL OUTPUT ADJUST/GND SENSE

2 ABSOLUTE MAXIMUM RATINGS (Note 1) POWER Input oltage 7 Soldering information CONTROL Input oltage 13 Lead Temperature (25 sec) 265 C Operating Junction Temperature R Thermal Resistance Control Section 0 C to 125 C TO-220 package φ JA = 50 C/W Power Transistor 0 C to 150 C TO-263 package φ JA = 30 C/W* Storage temperature - 65 C to 150 C * With package soldering to 0.5in 2 copper area over backside ground plane or internal power plane φ JA can vary from 20 C/W to >40 C/W depending on mounting technique. ELECTRICAL CHARACTERISTICS Electrical Characteristics at I LOAD = 0 ma, and T J = 25 C unless otherwise specified. Parameter Device Conditions Min Typ Max Units Reference oltage CONTROL = 2.75, POWER =2, I LOAD = 10mA CONTROL = 2.7 to 12, POWER =3.3 to 5.5, I LOAD = 10mA to 8A Output oltage -1.5 CONTROL = 4, POWER =2., I LOAD = 0mA CONTROL = 3, POWER =2.3, I LOAD = 0mA to 8A CONTROL = 5, POWER =3.3, I LOAD = 0mA CONTROL = 4, POWER =3.3, I LOAD = 0mA to 8A CONTROL = 5.35, POWER =3.35, I LOAD = 0mA CONTROL = 4.4, POWER =3.7, I LOAD = 0mA to 8A CONTROL = 5.5, POWER =3.5, I LOAD = 0mA CONTROL = 4.5, POWER =3.8, I LOAD = 0mA to 8A CONTROL = 5.8, POWER =3.8, I LOAD = 0mA CONTROL = 4.8, POWER =4.1, I LOAD = 0mA to 8A CONTROL = 6, POWER =4, I LOAD = 0mA CONTROL = 5, POWER =4.3, I LOAD = 0mA to 8A CONTROL = 7.5, POWER =5.5, I LOAD = 0mA CONTROL = 6.5, POWER =5.8, I LOAD = 0mA to 8A Line Regulation I LOAD = 10 ma, 1.5 ( CONTROL - OUT) m 0.8 ( POWER - OUT) 5.5 Load Regulation Minimum Load Current Control Pin Current (Note 4) CONTROL = OUT 2.5, POWER = OUT 0.8, I LOAD = 10mA to 8A 1 5 m CONTROL = 5, POWER =3.3, ADJ = 0 (Note 3) 5 10 ma CONTROL = OUT 2.5, POWER = OUT 0.8, ma I LOAD = 10mA to 8A Ground Pin Current (Note 4) CONTROL = OUT 2.5, POWER = OUT 0.8, I LOAD = 10mA to 8A 6 10 ma Adjust Pin Current CONTROL = 2.75, POWER = 2.05, I LOAD = 10mA µa Current Limit Ripple Rejection ( IN - OUT) = A CONTROL = POWER = OUT 2.5, RIPPLE = 1 P-P db I LOAD = 4A Thermal Regulation T A = 25 C, 30ms pulse %W Thermal Resistance Junction-to-Case T Package: Control Circuitry/ Power Transistor M Package: Control Circuitry/ Power Transistor 0.65/ /2.7 C/W C/W

3 ELECTRICAL CHARACTERISTICS Electrical Characteristics at I OUT = 0 ma, and T J = 25 C unless otherwise specified. Parameter Device Conditions Min Typ Max Units Dropout oltage Note 2 Control Dropout ( CONTROL - OUT) POWER = OUT 0.8, I LOAD = 10mA POWER = OUT 0.8, I LOAD = 8A Power Dropout ( POWER - OUT) CONTROL = OUT 2.5, I LOAD = 10mA CONTROL = OUT 2.5, I LOAD = 8A Parameters identified with boldface type apply over the full operating temperature range. Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. For guaranteed specifications and test conditions, see the Electrical Characteristics. The guaranteed specifications apply only for the test conditions listed. Note 2: Unless otherwise specified OUT = SENSE. For the adjustable device ADJ = 0. Note 3: The dropout voltage for the is caused by either minimum control voltage or minimum power voltage. The specifications represent the minimum input/output voltage required to maintain 1% regulation. Note 4: For the adjustable device the minimum load current is the minimum current required to maintain regulation. Normally the current in the resistor divider used to set the output voltage is selected to meet the minimum load current requirement. Note 5: The control pin current is the drive current required for the output transistor. This current will track output current with a ratio of about 1:100. The minimum value is equal to the quiescent current of the device. PIN FUNCTIONS Sense (Pin 1): This pin is the positive side of the reference voltage for the device. With this pin it is possible to Kelvin sense the output voltage at the load. Adjust (Pin 2): This pin is the negative side of the reference voltage for the device. Adding a small bypass capacitor from the Adjust pin to ground improves the transient response. For fixed voltage devices the Adjust pin is also brought out to allow the user to add a bypass capacitor. GND (Pin 2): For fixed voltage devices this is the bottom of the resistor divider that sets the output voltage. Output (Pin 3): This is the power output of the device. CONTROL (Pin 4): This pin is the supply pin for the control circuitry of the device. The current flow into this pin will be about 1% of the output current. The voltage at this pin must be 1.3 or greater than the output voltage for the device to regulate. POWER (Pin 5): This pin is the collector to the power device of the. The output load current is supplied through this pin. The voltage at this pin must be between 0.1 and 0.8 greater than the output voltage for the device to regulate.

4 APPLICATION HINTS The series of adjustable and fixed regulators are designed to power the new generation of microprocessors. The is designed to make use of multiple power supplies, existing in most systems, to reduce the dropout voltage. One of the advantages of the two supply approach is maximizing the efficiency. The second supply is at least 1 greater than output voltage and is providing the power for the control circuitry and supplies the drive current to the NPN output transistor. This allows the NPN to be driven into saturation; thereby reducing the dropout voltage by a BE compared to conventional designs. For the control voltage the current requirement is small equal to about 1% of the output current or approximately 100mA for a 10A load. Most of this current is drive current for the NPN output transistor. This drive current becomes part of the output current. The maximum voltage on the Control pin is 13. The maximum voltage at the Power pin is 7. Ground pin current for fixed voltage devices is typical 6mA and is constant as a function of load. Adjust pin current for adjustable devices is 60µA at 25 C and varies proportional to absolute temperature. The improved frequency compensation of permits the use of capacitors with very low ESR. This is critical in addressing the needs of modern, low voltage high sped microprocessors. The new generation of microprocessors cycle load current from several hundred ma to several A in tens of nanoseconds. Output voltage tolerances are tighter and include transient response as part of the specification. Designed to meet the fast current load step requirements of these microprocessors, the also saves total cost by needing less output capacitance to maintain regulation. Careful design of the has eliminated any supply sequencing issues associated with a dual supply system. The output voltage will not turn on until both supplies are operating. If the control voltage comes up first, the output current will be limited to a few milliamperes until the power input voltage comes up. If power input comes up first the output will not turn on at all until the control voltage comes up. The output can never come up unregulated. By tying the control and power inputs together the can also be operated as a single supply device. In single supply operation the dropout will be determined by the minimum control voltage. The new features of the require additional pins over the traditional 3-terminal regulator. Both the fixed and adjustable versions have remote sense pins, permitting very accurate regulation of output voltage at the load, rather than at the regulator. As a result, over an output current range of 100mA to 8A with a 2.5 output, the typical load regulation is less than 1m. For the fixed voltages the adjust pin is brought out allowing the user to improve transient response by bypassing the internal resistor divider. Optimum transient response is provided using a capacitor in the range of 0.1µF to 1µF for bypassing the Adjust pin. The value chosen will depend on the amount of output capacitance in the system. In addition to the enhancements mentioned, the reference accuracy has been improved by a factor of two with a guaranteed initial tolerance of ±0.6% at 25 C. This device can hold 1% accuracy over the full temperature range and load current range, guaranteed, when combined with ratiometrically accurate internal divider resistors and operating with an input/output differential of well under 1. Typical applications for the include 3.3 to 2.5 conversion with a 5 control supply, 5 to 4.2 conversion with a 12 control supply or 5 to 3.6 conversion with a 12 control supply. Due to the innovative design of the it is easy to obtain dropout voltages of less than 0.5 at 6A along with excellent static and dynamic specifications. Capable of 8A of output current with a maximum dropout of 0.8 the also has a fast transient response that allows it to handle large current changes associated with the new generation of microprocessors. The device is fully protected against overcurrent and overtemperature conditions. Grounding and Output Sensing The allows true Kelvin sensing for both the high and low side of the load. As a result the voltage regulation at he load can be easily optimized. oltage drops due to parasitic resistances between the regulator and the load can be placed inside the regulation loop of the. The advantages of remote sensing are illustrated in figures 1 through 3. Figure 1 shows the device connected as a conventional 3 terminal regulator with the Sense lead connected directly to the output of the device. R P is the parasitic resistance of the connections between the device and the load. Typically the load is a microprocessor and R P is made up of the PC traces and /or connector resistances (in the case of a modular regulator) between the regulator and the processor. Trace A of figure 3 illustrates the effect of RP. ery small resistances cause significant load regulation steps. Figure 2 shows the device connected to take advantage of the remote sense feature. The Sense pin and the top of the resistor divider are connected to the top of the load; the bottom of the resistor divider is connected to the bottom of the load. R P is now connected inside the regulation loop of the and for reasonable values of R P the load regulation at the load will be negligible. The effect on output regulation can be seen in trace B of figure CONTROL POWER SENSE OUTPUT ADJ R2 R1 RP R P LOAD OUT Figure 1. Conventional Load Sensing -

5 APPLICATION HINTS CONTROL POWER SENSE OUTPUT ADJ R1 R2 RP RP LOAD OUT Figure 2. Remote Load Sensing OUT FIGURE 1 OUT FIGURE 2 - ( I OUT )(R P ) to allow this capability. To ensure good transient response with heavy load current changes capacitor values on the order of 100µF are used in the output of many regulators. To further improve stability and transient response of these devices larger values of output capacitor can be used. The modern processors generate large high frequency current transients. The load current step contains higher order frequency components than the output coupling network must handle until the regulator throttles to the load current level. Because they contain parasitic resistance and inductance, capacitors are not ideal elements. These parasitic elements dominate the change in output voltage at the beginning of a transient load step change. The ESR of the output capacitors produces an instantaneous step in output voltage ( = I)(ESR). The ESL of the output capacitors produces a droop proportional to the rate of change of the output current (= L)( I/ t). The output capacitance produces a change in output voltage proportional to the time until the regulator can respond ( = t) ( I/C). Figure 4 illustrates these transient effects. I OUT TIME Figure 3. Remote Sensing Improves Load Regulation ESR EFFECTS ESL EFFECTS SLOPE, /t = I/C POINT AT WHICH REGULATOR TAKES CONTROL CAPACITANCE EFFECTS oltage drops due to R P are not eliminated; they will add to the dropout voltage of the regulator regardless of whether they are inside or outside the regulation loop. The can control the voltage at the load as long as the input-output voltage is greater than the total of the dropout voltage of the device plus the voltage drop across R P. Stability The circuit design used in the series requires the use of an output capacitor as part of the device frequency compensation. The addition of 150µF aluminum electrolytic or a 22µF solid tantalum on the output will ensure stability for all operating conditions. For best frequency response use capacitors with an ESR of less than 1Ω. In order to meet the transient requirements of the processor larger value capacitors are needed. Tight voltage tolerances are required in the power supply. To limit the high frequency noise generated by the processor high quality bypass capacitors must be used. In order to limit parasitic inductance (ESL) and resistance (ESR) in the capacitors to acceptable limits, multiple small ceramic capacitors in addition to high quality solid tantalum capacitors are required. When the adjustment terminal is bypassed to improve the ripple rejection, the requirement for an output capacitor increases. The Adjust pin is brought out on the fixed voltage device specifically Output oltage Figure 4. The series develops a 1.25 reference voltage between the Sense pin and the Adjust pin (Figure5). Placing a resistor between these two terminals causes a constant current to flow through R1 and down through R2 to set the overall output voltage. In general R1 is chosen so that this current is the specified minimum load current of 10mA.The current out of the Adjust pin is small, typically 50µA and it adds to the current from R1. Because I ADJ is very small it needs to be considered only when very precise output voltage setting is required. For best regulation the top of the resistor divider should be connected directly to the Sense pin. POWER CONTROL POWER CONTROL OUTPUT SENSE ADJ I ADJ 50µA OUT = REF (1 R2/R1)I ADJR2 REF R1 R2 OUT Figure 5. Setting Output oltage

6 APPLICATION HINTS Protection Diodes Unlike older regulators, the family does not need any protection diodes between the adjustment pin and the output and from the output to the input to prevent die over-stress. Internal resistors are limiting the internal current paths on the adjustment pin, therefore even with bypass capacitors on the adjust pin no protection diode is needed to ensure device safety under short-circuit conditions. The Adjust pin can be driven on a transient basis ±7 with respect to the output without any device degradation. Diodes between the Output pin and POWER pin are not usually needed. Microsecond surge currents of 50A to 100A can be handled by the internal diode between the Output pin and POWER pin of the device. In normal operations it is difficult to get those values of surge currents even with the use of large output capacitances. If high value output capacitors are used, such as 1000µF to 5000µF and the POWER pin is instantaneously shorted to ground, damage can occur. A diode from output to input is recommended, when a crowbar circuit at the input of the is used (Figure 6). Normal power supply cycling or even plugging and unplugging in the system will not generate current large enough to do any damage. POWER CONTROL CONTROL POWER OUTPUT SENSE ADJ D1* D2* R1 R2 OUT Figure 6. Optional Clamp Diodes Protect Against Input Crowbar Circuits If the is connected as a single supply device with the control and power input pins shorted together the internal diode between the output and the power input pin will protect the control input pin. As with any IC regulator, none the protection circuitry will be functional and the internal transistors will break down if the maximum input to output voltage differential is exceeded. Thermal Considerations Thermal resistance specification for both the Control Section and the Power Transistor are given in the electrical characteristics. The thermal resistance of the Control section is given as 0.65 C/W and junction temperature of the Control section can run up to 125 C. The thermal resistance of the Power section is given as 2.7 C/W and junction temperature of the Power section can run up to 150 C. Due to the thermal gradients between the power transistor and the control circuitry there is a significant difference in thermal resistance between the Control and Power sections. irtually all the power dissipated by the device is dissipated in the power transistor. The temperature rise in the power transistor will be greater than the temperature rise in the Control section making the thermal resistance lower in the Control section. At power levels below 12W the temperature gradient will be less than 25 C and the maximum ambient temperature will be determined by the junction temperature of the Control section. This is due to the lower maximum junction temperature in the Control section. At power levels above 12W the temperature gradient will be greater than 25 C and the maximum ambient temperature will be determined by the Power section. In both cases the junction temperature is determined by the total power dissipated in the device. For most low dropout applications the power dissipation will be less than 12W. The power in the device is made up of two components: the power in the output transistor and the power in the drive circuit. The power in the control circuit is negligible. The power in the drive circuit is equal to: P DRIE = ( CONTROL - OUT )(I CONTROL ) Where I CONTROL is equal to between I OUT /100(typ) and I OUT /58(max). The power in the output transistor is equal to: P OUTPUT = ( POWER - OUT )(I OUT ) The total power is equal to: P TOTAL = P DRIE P OUTPUT Junction-to-case thermal resistance is specified from the IC junction to the bottom of the case directly below the die. This is the lowest resistance path for the heat flow. In order to ensure the best possible thermal flow from this area of the package to the heat sink proper mounting is required. Thermal compound at the case-to-heat sink interface is recommended. A thermally conductive spacer can be used, if the case of the device must be electrically isolated, but its added contribution to thermal resistance has to be considered. The series have internal power and thermal limiting circuitry designed to protect the device under overload conditions. However maximum junction temperature ratings should not be exceeded under continuous normal load conditions. Careful consideration must be given to all sources of thermal resistance from junction to ambient, including junction-to-case, case-to-heat sink interface and heat sink resistance itself.

7 ICAL PERFORMANCE CHARACTERISTICS REFERENCE OLTAGE () CONTROL PIN CURRENT (ma) MINIMUM CONTROL OLTAGE (CONTROL OUT) () MINIMUM POWER OLTAGE

8 PACKAGE DIMENSIONS inches (millimeters) unless otherwise noted. 5 LEAD TO-220 PLASTIC PACKAGE (T) ( ) ( ) DIA ( ) ( ) ( ) ( ) ( ) ( ) ( ) ( ) ( ) (0.81) ( ) (2.67) T (TO-220 ) AMS DRW# LEAD TO-263 PLASTIC PACKAGE (M) ( ) (1.524) ( ) ( ) ( ) ( ) ( ) ( ) (0.81) (2.74) ( ) ( ) ( ) M (DD5) AMS DRW#042192R1

AMS Amp LOW DROPOUT VOLTAGE REGULATOR. General Description. Applications. Typical Application V CONTROL V OUT V POWER +

AMS Amp LOW DROPOUT VOLTAGE REGULATOR. General Description. Applications. Typical Application V CONTROL V OUT V POWER + 5 Amp LOW DROPOUT OLTAGE REGULATOR General Description The AMS1505 series of adjustable and fixed low dropout voltage regulators are designed to provide 5A output current to power the new generation of

More information

3A L.D.O. VOLTAGE REGULATOR (Adjustable & Fixed)

3A L.D.O. VOLTAGE REGULATOR (Adjustable & Fixed) FEATURES Output Current of 3A Fast Transient Response 0.04% Line Regulation 0.2% Load Regulation Internal Thermal and Current Limiting Adjustable or Fixed Output oltage(1.5, 1.8, 2.5, 3.3, 5.0) Surface

More information

1.5A L.D.O. VOLTAGE REGULATOR (Adjustable & Fixed) LM1086

1.5A L.D.O. VOLTAGE REGULATOR (Adjustable & Fixed) LM1086 FEATURES Output Current of 1.5A Fast Transient Response 0.2% Line Regulation 0.3% Load Regulation Internal Thermal and Current Limiting Adjustable or Fixed Output oltage(1.5, 1.8, 2.5, 3.3, 5.0) Surface

More information

AMS1117 1A Adjustable / Fixed Low Dropout Linear Regulator

AMS1117 1A Adjustable / Fixed Low Dropout Linear Regulator 1A Adjustable / Fixed Low Dropout Linear Regulator Description The is a series of low dropout voltage regulators which can provide up to 1A of output current. The is available in six fixed voltage, 1.2,

More information

5A LOW DROPOUT POSITIVE REGULATOR

5A LOW DROPOUT POSITIVE REGULATOR 5A LOW DROPOUT POSITIVE REGULATOR Features Output Current : 5A Maximum Input Voltage : 12V Adjustable Output Voltage or Fixed 1.8V, 3.3V, 5.0V Current Limiting and Thermal Protection Standard 3Pin Power

More information

AT1084 5A Low Dropout Positive Voltage Regulator

AT1084 5A Low Dropout Positive Voltage Regulator FEATURES DESCRIPTION Three-Terminal Adjustable or Fixed Output Output Current of 5A Low Dropout 1.3V at 5A Output Current Line Regulation: 0.04% Load Regulation: 0.2% Fast Transient Response OCP & OTP

More information

TO-220. Symbol Description Max Units VIN Input Voltage 15 V IOUT DC Output Current PD/(VIN-VO) ma. -40 to 125 (* in case of IL

TO-220. Symbol Description Max Units VIN Input Voltage 15 V IOUT DC Output Current PD/(VIN-VO) ma. -40 to 125 (* in case of IL TECHNICAL DATA 1.0A Low Dropout Positive Voltage Regulator IL1117-xx The IL1117 is a series of low dropout voltage regulators which can provide up to 1A of output current. The IL1117 is available in eight

More information

IL1117-xx. 1.0A Low Dropout Positive Voltage Regulator TECHNICAL DATA. Features. Applications. Absolute Maximum Ratings. Rev. 02

IL1117-xx. 1.0A Low Dropout Positive Voltage Regulator TECHNICAL DATA. Features. Applications. Absolute Maximum Ratings. Rev. 02 TECHNICAL DATA 1.0A Low Dropout Positive Voltage Regulator IL1117-xx The IL1117 is a series of low dropout voltage regulators which can provide up to 1A of output current. The IL1117 is available in eight

More information

IL1117C-xxLow Dropout Positive Voltage Regulator TECHNICAL DATA

IL1117C-xxLow Dropout Positive Voltage Regulator TECHNICAL DATA IL1117C-xxLow Dropout Positive Voltage Regulator TECHNICAL DATA Description The IL1117C is a series of low dropout voltage regulators which can provide up to 1A of output current. The IL1117C is available

More information

Features. Low Dropout Voltage Load regulation:0.5% Max current. The AMS1117 is available in six fixed

Features. Low Dropout Voltage Load regulation:0.5% Max current. The AMS1117 is available in six fixed Description Features The AMS7 is a series of low dropout voltage regulators which can provide up to A of output Low Dropout Voltage Load regulation:0.5% Max current. The AMS7 is available in six fixed

More information

LM317L 3-Terminal Adjustable Regulator

LM317L 3-Terminal Adjustable Regulator 3-Terminal Adjustable Regulator General Description The is an adjustable 3-terminal positive voltage regulator capable of supplying 100mA over a 1.2V to 37V output range. It is exceptionally easy to use

More information

LM , LM mA and 500mA Voltage Regulators

LM , LM mA and 500mA Voltage Regulators 400mA and 500mA Voltage Regulators General Description The LM2937-2.5 and LM2937-3.3 are positive voltage regulators capable of supplying up to 500 ma of load current. Both regulators are ideal for converting

More information

PIN DESCRIPTION. Enable (Input) IN GND OUT FLG ADJ LM39300T-X.X LM39300-X.X

PIN DESCRIPTION. Enable (Input) IN GND OUT FLG ADJ LM39300T-X.X LM39300-X.X FEATURES 3A minimum guaranteed output current 500mV typical dropout at 3A Ideal for 3.0V to 2.5V conversion Ideal for 2.5V to 1.8V or 1.5V conversion 1% initial accuracy Low ground current Current limiting

More information

LM ma Low Dropout Regulator

LM ma Low Dropout Regulator 500 ma Low Dropout Regulator General Description The LM2937 is a positive voltage regulator capable of supplying up to 500 ma of load current. The use of a PNP power transistor provides a low dropout voltage

More information

LM , LM mA and 500mA Voltage Regulators

LM , LM mA and 500mA Voltage Regulators LM2937-2.5, LM2937-3.3 400mA and 500mA Voltage Regulators General Description The LM2937-2.5 and LM2937-3.3 are positive voltage regulators capable of supplying up to 500 ma of load current. Both regulators

More information

3-TERMINAL ADJUSTABLE REGULATOR LM317L

3-TERMINAL ADJUSTABLE REGULATOR LM317L 3-TERMINAL ADJUSTABLE REGULATOR DESCRIPTION Outline Drawing The is an adjustable 3-terminal positive voltage regulator capable of supplying 100mA over a 1.2V to 37V output range. It is exceptionally easy

More information

UNISONIC TECHNOLOGIES CO., LTD UC5301

UNISONIC TECHNOLOGIES CO., LTD UC5301 UNISONIC TECHNOLOGIES CO., LTD UC5301 SWITCHED-CAPACITOR VOLTAGE INVERTERS DESCRIPTION The UTC UC5301 is an unregulated charge-pump voltage inverter. It can be used to generate a negative supply from positive

More information

Advanced Power Electronics Corp.

Advanced Power Electronics Corp. 300mA Low Dropout Linear Regulator with Shutdown Description The is a low dropout, positive linear regu lator with very low quiescent current. The can supply 300mA output current with low dropout voltage

More information

4707 DEY ROAD LIVERPOOL, NY PHONE: (315) FAX: (315) M.S. KENNEDY CORPORATION MSK Web Site:

4707 DEY ROAD LIVERPOOL, NY PHONE: (315) FAX: (315) M.S. KENNEDY CORPORATION MSK Web Site: 4707 DEY ROAD LIVERPOOL, NY 13088 PHONE: (315) 701-6751 FAX: (315) 701-6752 M.S. KENNEDY CORPORATION MSK Web Site: http://www.mskennedy.com/ Voltage Regulators By Brent Erwin, MS Kennedy Corp.; Revised

More information

1.0A Low Dropout Positive Voltage Regulator

1.0A Low Dropout Positive Voltage Regulator 1.A Low Dropout Positive Voltage Regulator DESCRIPTION The is a series of low dropout voltage regulators which can provide up to 1A of output current. The is available in four fixed voltage, 1.2V,1.8V,

More information

Low Dropout Regulator with Delayed Reset

Low Dropout Regulator with Delayed Reset FEATURES Externally set delay for reset 5V/750mA output Very low dropout voltage 0.6V at 0.5A Reverse battery protection 60V load dump protection 50V reverse transient protection Internal thermal over

More information

LM3352 Regulated 200 ma Buck-Boost Switched Capacitor DC/DC Converter

LM3352 Regulated 200 ma Buck-Boost Switched Capacitor DC/DC Converter Regulated 200 ma Buck-Boost Switched Capacitor DC/DC Converter General Description The LM3352 is a CMOS switched capacitor DC/DC converter that produces a regulated output voltage by automatically stepping

More information

150 WATT HEW SINGLE SERIES DC/DC CONVERTERS

150 WATT HEW SINGLE SERIES DC/DC CONVERTERS Features Description The 4:1 Input Voltage 150 W single HEW Series of DC/DC converters provide precisely regulated dc outputs. The output voltage is fully isolated from the input, allowing the output to

More information

CE3151 Series. Standalone Linear Li-Ion Battery Charger with Thermal Regulation

CE3151 Series. Standalone Linear Li-Ion Battery Charger with Thermal Regulation Standalone Linear Li-Ion Battery Charger with Thermal Regulation INTRODUCTION: The CE3151 is a complete constant-current/ constant voltage linear charger for single cell lithium-ion batteries. Its SOT

More information

LP2982 Micropower 50 ma Ultra Low-Dropout Regulator

LP2982 Micropower 50 ma Ultra Low-Dropout Regulator Micropower 50 ma Ultra Low-Dropout Regulator General Description The LP2982 is a 50 ma, fixed-output voltage regulator designed to provide ultra low dropout and lower noise in battery powered applications.

More information

LP2981 Micropower 100 ma Ultra Low-Dropout Regulator

LP2981 Micropower 100 ma Ultra Low-Dropout Regulator LP2981 Micropower 100 ma Ultra Low-Dropout Regulator General Description The LP2981 is a 100 ma, fixed-output voltage regulator designed specifically to meet the requirements of battery-powered applications.

More information

GM1117 GM1117V1.01. Features. Description. Application. Typical Application Circuits 1A LOW DROPOUT PRECISION VOLTAGE REGULATOR

GM1117 GM1117V1.01. Features. Description. Application. Typical Application Circuits 1A LOW DROPOUT PRECISION VOLTAGE REGULATOR Description The is a positive low dropout regulator and is available in an adjustable version and fixed output voltage from 1.5V to 5.0V. All internal circuitry is designed to operate down to 800mV input

More information

XA4217. Preset 8.4V Charge Voltage with 1% Accuracy

XA4217. Preset 8.4V Charge Voltage with 1% Accuracy High Accuracy Linear Li-Lon Battery Charger Features Preset 8.4V Charge Voltage with 1% Accuracy Input Voltage:9-10V DC Pre-Charging, the Charge Current is Programmable Charge Current Up to 1A adjustable

More information

Features. Figure 1. EFIL-28 Connection Diagram

Features. Figure 1. EFIL-28 Connection Diagram Description The EFIL-28 Module is an EMI Filter designed for use with Calex DC/DC Converters. Built in a 1/2 brick package for systems with 24VDC and 28VDC nominal input, the EFIL-28 module can provide

More information

DT V 800mA Standalone Linear Li-ion Battery Charger FEATURES GENERAL DESCRIPTION APPLICATIONS ORDER INFORMATION

DT V 800mA Standalone Linear Li-ion Battery Charger FEATURES GENERAL DESCRIPTION APPLICATIONS ORDER INFORMATION GENERAL DESCRIPTION The DT7102 is a highly integrated 5V 800mA Li-ion battery linear charging management device with standby indicator output. The DT7102 charges a battery in three phases: trickle charging,

More information

HX6038 HX

HX6038 HX HX1001 Advanced Linear Charge Management Controller Features Preset 8.4V Charge Voltage with 1% Accuracy Input Voltage: 9V-16V Pre-Charging, the Charge Current is Programmable Charge Current Up to 1A adjustable

More information

China - Germany - Korea - Singapore - United States - smc-diodes.com

China - Germany - Korea - Singapore - United States  - smc-diodes.com Description: The SLR1117A is a low dropout, three terminals regulator designed to provide output current up to 1A. The device is available in an adjustable version and fixed output voltage of 1.8V, 2.5V

More information

Package: RN: SOT23-5 TRN: TSOT23-5 Features: P: Standard (default, lead free) C: Customized. 1uF

Package: RN: SOT23-5 TRN: TSOT23-5 Features: P: Standard (default, lead free) C: Customized. 1uF FEATURES Programmable Charge Current Up to 8mA No MOSFET, Sense Resistor or Blocking Diode Required Preset 4.2V Charge Voltage with ±1% Accuracy Charge Current Monitor Output for Gas Gauging Thermal Regulation

More information

300mA,Ultra-low noise, Small Package Ultra-Fast CMOS LDO Regulator

300mA,Ultra-low noise, Small Package Ultra-Fast CMOS LDO Regulator 2 GND Preliminary Datasheet 300mA,Ultra-low noise, Small Package Ultra-Fast CMOS LDO Regulator General Description The is designed for portable RF and wireless applications with demanding performance and

More information

ACE4108 Max.2A Li-ion Switching Charger IC

ACE4108 Max.2A Li-ion Switching Charger IC Description The ACE4108 is a 2A Li-Ion battery switching charger intended for 12V. Low power dissipation, an internal MOSFET and its compact package with minimum external components requirement makes the

More information

SL Series Application Notes. SL Series - Application Notes. General Application Notes. Wire Gage & Distance to Load

SL Series Application Notes. SL Series - Application Notes. General Application Notes. Wire Gage & Distance to Load Transportation Products SL Series - Application Notes General Application Notes vin 2 ft. 14 AWG The SL family of power converters, designed as military grade standalone power converters, can also be used

More information

HM8202. The HM8202 is available in the SOP-8L package. Charging Docks Handheld Instruments Portable Computers

HM8202. The HM8202 is available in the SOP-8L package. Charging Docks Handheld Instruments Portable Computers Standalone Li-Ion Switch Mode Battery Charger Features Input Supply Range: 9V ~ 14V End-Charge-Current Detection Output Constant Switching Frequency for Minimum Noise Automatic Battery Recharge Automatic

More information

Features. Applications. n Cellular Phone n Palmtop/Laptop Computer n Personal Digital Assistant (PDA) n Camcorder, Personal Stereo, Camera

Features. Applications. n Cellular Phone n Palmtop/Laptop Computer n Personal Digital Assistant (PDA) n Camcorder, Personal Stereo, Camera Micropower 50 ma Ultra Low-Dropout Regulator in SOT-23 and micro SMD Packages General Description The LP2982 is a 50 ma, fixed-output voltage regulator designed to provide ultra low dropout and lower noise

More information

LP2981 Micropower 100 ma Ultra Low-Dropout Regulator in SOT-23 and micro SMD Packages

LP2981 Micropower 100 ma Ultra Low-Dropout Regulator in SOT-23 and micro SMD Packages LP2981 Micropower 100 ma Ultra Low-Dropout Regulator in SOT-23 and micro SMD Packages General Description The LP2981 is a 100 ma, fixed-output voltage regulator designed specifically to meet the requirements

More information

800mA Lithium Ion Battery Linear Charger

800mA Lithium Ion Battery Linear Charger 800mA Lithium Ion Battery Linear Charger General Description is a complete constant-current/constant voltage linear charger for single cell lithium-ion batteries. Furthermore the is specifically designed

More information

ACE4054C. 500mA/1.5A Standalone Linear Li-Ion Battery Charge

ACE4054C. 500mA/1.5A Standalone Linear Li-Ion Battery Charge Description The ACE4054C is a single cell, fully integrated constant current (CC)/ constant voltage (CV) Li-ion battery charger. Its compact package with minimum external components requirement makes the

More information

SGM4056 High Input Voltage Charger

SGM4056 High Input Voltage Charger GENERAL DESCRIPTION The SGM456 is a cost-effective, fully integrated high input voltage single-cell Li-ion battery charger. The charger uses a CC/CV charge profile required by Li-ion battery. The charger

More information

CE3152 Series. Standalone Linear LiFePO4 battery charger with Thermal Regulation INTRODUCTION: FEATURES: APPLICATIONS: PIN CONFIGURATION:

CE3152 Series. Standalone Linear LiFePO4 battery charger with Thermal Regulation INTRODUCTION: FEATURES: APPLICATIONS: PIN CONFIGURATION: Standalone Linear LiFePO battery charger with Thermal Regulation Series INTRODUCTION: The is a complete constantcurrent constantvoltage linear charger for single cell LiFePO batteries. It s SOT package

More information

The XA4203 is available in the SOP-8L package. Charging Docks Handheld Instruments Portable Computers

The XA4203 is available in the SOP-8L package. Charging Docks Handheld Instruments Portable Computers Standalone Li-Ion Switch Mode Battery Charger Features Input Supply Range: 9V-16V End - Charge - Current Detection Output Constant Switching Frequency for Minimum Noise Automatic Battery Recharge Automatic

More information

800mA Lithium Ion Battery Linear Charger

800mA Lithium Ion Battery Linear Charger GENERAL DESCRIPTION is a complete CC/CV linear charger for single cell lithium-ion batteries. it is specifically designed to work within USB power Specifications. No external sense resistor is needed and

More information

800mA Linear Li-Ion Battery Charger with Protection of Reverse Connection of Battery

800mA Linear Li-Ion Battery Charger with Protection of Reverse Connection of Battery 800mA Linear Li-Ion Battery Charger with Protection of Reverse Connection of Battery General Description The is a complete constant-current/constant- voltage linear charger for single cell lithium-ion

More information

DUAL POSITIVE/NEGATIVE, 3 AMP, LOW DROPOUT FIXED VOLTAGE REGULATORS

DUAL POSITIVE/NEGATIVE, 3 AMP, LOW DROPOUT FIXED VOLTAGE REGULATORS MILPRF8 CERTIFIED M.S.KENNEDY CORP. 707 Dey Road Liverpool, N.Y. 088 DUAL POSITIVE/NEGATIVE, AMP, LOW DROPOUT FIXED VOLTAGE REGULATORS 000 SERIES () 706 FEATURES: Dual Low Dropout Voltage Internal Short

More information

QHW050F1, QHW075F1, and QHW100F1 Power Modules: dc-dc Converters; 36 to 75 Vdc Input, 3.3 Vdc Output; 33 W to 66 W

QHW050F1, QHW075F1, and QHW100F1 Power Modules: dc-dc Converters; 36 to 75 Vdc Input, 3.3 Vdc Output; 33 W to 66 W QHWF1, QHW7F1, and QHW1F1 Power Modules: Data Sheet January 2 Absolute Maximum Ratings Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress

More information

DT V 1A Standalone Linear Li-ion Battery Charger FEATURES GENERAL DESCRIPTION APPLICATIONS ORDER INFORMATION

DT V 1A Standalone Linear Li-ion Battery Charger FEATURES GENERAL DESCRIPTION APPLICATIONS ORDER INFORMATION GENERAL DESCRIPTION The DT7115 is a highly integrated 5V 1A Li-ion battery linear charging management device. The DT7115 charges a battery in three phases: trickle charging, constant current, and constant

More information

DIO5518D 300mA,Single Li-ion Battery Charger

DIO5518D 300mA,Single Li-ion Battery Charger 300mA,Single Li-ion Battery Charger Rev.0 Features Programmable Charge Current Up to 300mA Over-Temperature Protection Under oltage Lockout Protection Over oltage Lockout Protection Reverse current protection

More information

HP420X. 5A, High Efficiency POL Module GENERAL DESCRIPTION: FEATURES: APPLICATIONS: TYPICAL APPLICATION CIRCUIT & PACKAGE SIZE:

HP420X. 5A, High Efficiency POL Module GENERAL DESCRIPTION: FEATURES: APPLICATIONS: TYPICAL APPLICATION CIRCUIT & PACKAGE SIZE: FEATURES: High Power Density Power Module 5A Maximum Load Input Voltage Range from 9.0V to 40.0V Output Voltage Range from 1.0V to 5.0V Excellent Thermal Performance 94% Peak Efficiency Enable Function

More information

(typ.) (Range) ±18 330# 89 MPW MPW

(typ.) (Range) ±18 330# 89 MPW MPW DC/DC 30W, Single & Dual Output FEATURES 2 x 1.6 x 0.4 Metal Package Ultra-wide 4:1 Input Range Operating Temp. Range 40 C to 80 C Short Circuit Protection I/O-isolation 1500 VDC Input Filter meets EN

More information

COTAG GENERAL DESCRIPTION

COTAG GENERAL DESCRIPTION GENERAL DESCRIPTION The YF8036 is a highly integrated Li-ion battery linear charging management device targeted at space limited portable applications. The YF8036 offers an integrated MOSFET and current

More information

DH50 SERIES. DATASHEET Rev. A

DH50 SERIES. DATASHEET Rev. A DATASHEET DH50 SERIES 2:1 Wide Input Voltage Ranges Single Outputs, Efficiency up to 92% 2.0 x 1.0 x 0.4 Encapsulated Shielded Metal Package FEATURES RoHS & UL 94V-0 Compliant 50 Watts Output Power 2:1

More information

Rev1.0 UCT V 1A Standalone Linear Li-ion Battery Charger GENERAL DESCRIPTION FEATURES APPLICATIONS

Rev1.0 UCT V 1A Standalone Linear Li-ion Battery Charger GENERAL DESCRIPTION FEATURES APPLICATIONS 5V 1A Standalone Linear Li-ion Battery Charger GENERAL DESCRIPTION The UCT3146 is a highly integrated 5V 1A Li-ion battery linear charging management device. The UCT3146 charges a battery in three phases:

More information

LP2992 Micropower 250 ma Low-Noise Ultra Low-Dropout Regulator in SOT-23 and LLP Packages Designed for Use with Very Low ESR Output Capacitors

LP2992 Micropower 250 ma Low-Noise Ultra Low-Dropout Regulator in SOT-23 and LLP Packages Designed for Use with Very Low ESR Output Capacitors Micropower 250 ma Low-Noise Ultra Low-Dropout Regulator in SOT-23 and LLP Packages Designed for Use with Very Low ESR Output Capacitors General Description The LP2992 is a 250 ma, fixed-output voltage

More information

Lithium Ion Battery Charger for Solar-Powered Systems

Lithium Ion Battery Charger for Solar-Powered Systems Lithium Ion Battery Charger for Solar-Powered Systems General Description: The is a complete constant-current /constant voltage linear charger for single cell Li-ion and Li Polymer rechargeable batteries.

More information

SWITCH-MODE CERAMIC CAPACITORS

SWITCH-MODE CERAMIC CAPACITORS Switch-Mode ceramic capacitors feature large capacitance values and exhibit low ESR (equivalent series resistance) and low ESL (equivalent series inductance) making them well suited for high power and

More information

ACT V/1.5A Backup Battery Pack Manager FEATURES APPLICATIONS GENERAL DESCRIPTION. Rev 0, 06-Nov-13 Product Brief

ACT V/1.5A Backup Battery Pack Manager FEATURES APPLICATIONS GENERAL DESCRIPTION. Rev 0, 06-Nov-13 Product Brief 0 200 400 600 800 1000 1400 1200 5.5 FEATURES Dedicated Single Chip Solution for Mobile Power With Minimal Component Count 5V/1.5A Constant Output Current in Boost Mode 1.5A Switching Charger Programmable

More information

1.2A Single-chip Li-ion and Li-POL Charge

1.2A Single-chip Li-ion and Li-POL Charge 1.2A Single-chip Li-ion and Li-POL Charge General Description The LP28012 is a complete constant-current/ constant voltage linear charger for single cell lithium-ion batteries. Its ESOP8 package and low

More information

CONSONANCE. 1A LiFePO4 Battery Charger CN3058E. Features: General Description: Applications: Pin Assignment

CONSONANCE. 1A LiFePO4 Battery Charger CN3058E. Features: General Description: Applications: Pin Assignment A LiFePO4 Battery Charger CN3058E General Description: The CN3058E is a complete constant-current /constant voltage linear charger for single cell LiFePO4 rechargeable batteries. The device contains an

More information

Efficiency (typ.) (Range) Output Voltage Current. Input Current Load VDC VDC ma ma ma(typ.) ma(typ.) ma(typ.

Efficiency (typ.) (Range) Output Voltage Current. Input Current Load VDC VDC ma ma ma(typ.) ma(typ.) ma(typ. FEATURES 2"x 1"x 0.4" Metal Package Wide 2:1 Input Range High Efficiency up to % Operating Ambient Temp. Range 40 C to 80 C Short Circuit Protection I/O-isolation 1500 VDC Input Filter meets EN 55022,class

More information

16 ~ 250 VDC -40 ~ +105 C 820~250000µF ± 20% For capacitance values > 33000µF, add the value of:

16 ~ 250 VDC -40 ~ +105 C 820~250000µF ± 20% For capacitance values > 33000µF, add the value of: T-HA Series 105 C, 3000 hours Long Life - endurance rating of 3000 hours at 105 C 4 or 5 terminal mounting provides stability and keyed polarity Extended higher CV ratings RoHS Compliant Rated Working

More information

DESCRIPTION FEATURES APPLICATIONS TYPICAL APPLICATION

DESCRIPTION FEATURES APPLICATIONS TYPICAL APPLICATION LTC-./LTC- Step-p/Step-Down Switched Capacitor DC/DC Converters with Low-Battery Comparator FEATRES.V or V Output Voltages V to V Input Voltage Range p to ma Output Current Only Three External Capacitors

More information

Output Voltage Current. Input Current Ripple. Efficiency (typ.) Load VDC VDC ma ma ma(typ.) ma(typ.) ma(typ.) μf % 2.

Output Voltage Current. Input Current Ripple. Efficiency (typ.) Load VDC VDC ma ma ma(typ.) ma(typ.) ma(typ.) μf % 2. FEATURES Industrial Standard 2" X 1" Package Wide 2:1 Input Voltage Range Fully Regulated Output Voltage High Efficiency up to 88% I/O Isolation 1500 VDC Operating Ambient Temp. Range -40 to 85 Overload

More information

1A Linear Li-Ion Battery Charger in SOP8/MSOP8

1A Linear Li-Ion Battery Charger in SOP8/MSOP8 1A Linear Li-Ion Battery Charger in SOP8/MSOP8 FP8102 General Description The FP8102 is a standalone linear Li-ion battery charger with exposed pad SOP8/MSOP8 package. With few external components, FP8102

More information

1.2A Single-chip Li-ion and Li-POL Charge

1.2A Single-chip Li-ion and Li-POL Charge 1.2A Single-chip Li-ion and Li-POL Charge General Description The is a complete constant-current / constant-voltage linear charger for single cell lithium-ion batteries. Its ESOP-8 package and low external

More information

Fully integrated constant current/constant voltage Li-ion battery charger

Fully integrated constant current/constant voltage Li-ion battery charger Description The ACE4054 is a single cell, fully integrated constant current (CC) / constant voltage (CV) Li-ion battery charger. Its compact package with minimum external components requirement makes the

More information

CE3150B Series. Standalone Linear Li-Ion Battery Charger with Thermal Regulation

CE3150B Series. Standalone Linear Li-Ion Battery Charger with Thermal Regulation Standalone Linear Li-Ion Battery Charger with Thermal Regulation INTRODUCTION: The CE3150B is a complete constant-current/ constant voltage linear charger for single cell lithium-ion batteries. Its SOT

More information

1A Linear Li+ Battery Chargers with Integrated Pass FET and Thermal Regulation in 2mm x 2mm TDFN

1A Linear Li+ Battery Chargers with Integrated Pass FET and Thermal Regulation in 2mm x 2mm TDFN 19-3670; Rev 0; 4/05 EVALUATION KIT AVAILABLE 1A Linear Li+ Battery Chargers with Integrated Pass General Description The intelligent, stand-alone constant-current/constant-voltage (CCCV), thermally regulated

More information

NOT RECOMMENDED FOR NEW DESIGNS

NOT RECOMMENDED FOR NEW DESIGNS olt Input NOT RECOMMENDED FOR NEW DESIGNS Series Features 40 C to + C operation 19 to DC input 50 V for 50 ms transient protection Fully isolated Fixed frequency Remote sense on single models Inhibit/sync

More information

55 C to +105 C 6.3, 10, 16, 25, 35, 50, 63, 80 & 100 Vdc. Shelf Test: C. 0.3 mm Max. A

55 C to +105 C 6.3, 10, 16, 25, 35, 50, 63, 80 & 100 Vdc. Shelf Test: C. 0.3 mm Max. A Type AFK 55 C to 5 C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 5 C Low Impedance and Long-Life for Filtering, Bypassing and Power Supply Decoupling Specifications Life Test: Operating Temperature:

More information

XA4202. The XA4202 is available in the 8-lead SO Package. Charging Docks Handheld Instruments Portable Computers.

XA4202. The XA4202 is available in the 8-lead SO Package. Charging Docks Handheld Instruments Portable Computers. Standalone Li-Lon Switch Mode Battery Charger Features Input Supply Range: 4.7V-6V High Efficiency Current Mode PWM Controller End - Charge - Current Detection Output Constant Switching Frequency for Minimum

More information

Output Current Input Current Over Load VDC VDC ma ma(typ.) ma(typ.) VDC μf %

Output Current Input Current Over Load VDC VDC ma ma(typ.) ma(typ.) VDC μf % Doc. EC-0093 FEATURES Industrial Standard 2"x1" Package Ultra-wide Input Range 9-36VDC, 18-75VDC, 40-160VDC I/O Isolation 3000VAC with Reinforced Insulation Operating Ambient Temp. Range -40 C to +88 C

More information

Type AHA SMT Aluminum Electrolytic Capacitors -55 C to +105 C - Long Life

Type AHA SMT Aluminum Electrolytic Capacitors -55 C to +105 C - Long Life Long Life Filtering, Bypassing, Power Supply Decoupling Capacitors deliver twice the life of many SMT aluminum capacitor types, and they handle high levels of ripple current. The AHA can handle the ripple

More information

PT8A mA Li-ion/Polymer Battery Charger

PT8A mA Li-ion/Polymer Battery Charger Features A Constant-Current / Constant-Voltage Linear Charger for Single-Cell Li-ion/Polymer Batteries Integrated Pass Element and Current Sensor Highly-Integrated, Requiring No External FETs or Blocking

More information

(typ.) (Range) Input Specifications Parameter Model Min. Typ. Max. Unit 12V Input Models Input Surge Voltage (100ms.

(typ.) (Range) Input Specifications Parameter Model Min. Typ. Max. Unit 12V Input Models Input Surge Voltage (100ms. FEATURES Smallest Encapsulated 50W! Package Size 2.0 x 1.0 x 0.4 Wide 2:1 lnput Range Excellent Efficiency up to 92% Over-Temperature Protection I/O-isolation Voltage 1500VDC Remote On/Off Control Shielded

More information

DPX30-xxSxx DC-DC Converter Module 9.5 ~ 18 VDC and 18 ~ 36 VDC and 36~ 75 VDC input; 3.3 to 28 VDC Single Output; 30 Watts Output Power

DPX30-xxSxx DC-DC Converter Module 9.5 ~ 18 VDC and 18 ~ 36 VDC and 36~ 75 VDC input; 3.3 to 28 VDC Single Output; 30 Watts Output Power DC-DC Converter Module 9.5 ~ 18 VDC and 18 ~ 36 VDC and 36~ 75 VDC input; 3.3 to 28 VDC Single Output; 30 Watts Output Power FEATURES NO MINIMUM LOAD REQUIRED 1600VDC INPUT TO OUTPUT ISOLATION SCREW TERMINALS

More information

Linear Li+ Battery Charger with Integrated Pass FET, Thermal Regulation, and ACOK in 3mm x 3mm TDFN

Linear Li+ Battery Charger with Integrated Pass FET, Thermal Regulation, and ACOK in 3mm x 3mm TDFN 19-289; Rev 2; 8/5 EVALUATION KIT AVAILABLE Linear Li+ Battery Charger with Integrated Pass FET, General Description The MAX158 is an intelligent, stand-alone constant-current, constant-voltage (CCCV),

More information

Output Current Input Current Reflected Ripple. Efficiency (typ.) Load VDC VDC ma ma ma(typ.) ma(typ.) ma (typ.) VDC μf % MKW40-12S033

Output Current Input Current Reflected Ripple. Efficiency (typ.) Load VDC VDC ma ma ma(typ.) ma(typ.) ma (typ.) VDC μf % MKW40-12S033 DC/DC High Efficiency Regulated Output W Minmax MKW Series FEATURES Smallest Encapsulated W Ultra-compact 2" X 1" Package Wide 2:1 Input Voltage Range Fully Regulated Output Voltage Excellent Efficiency

More information

Features. Applications. n Notebook/Desktop PC n PDA/Palmtop Computer n Wireless Communication Terminals n SMPS Post-Regulator

Features. Applications. n Notebook/Desktop PC n PDA/Palmtop Computer n Wireless Communication Terminals n SMPS Post-Regulator Micropower/Low Noise, 500 ma Ultra Low-Dropout Regulator For Use with Ceramic Output Capacitors General Description The LP2989 is a fixed-output 500 ma precision LDO regulator designed for use with ceramic

More information

Output Current Input Current Reflected Ripple. Efficiency (typ.) (Range) VDC VDC ma ma(typ.) ma(typ.) ma(typ.) VDC μf % MTQZ50-72S05

Output Current Input Current Reflected Ripple. Efficiency (typ.) (Range) VDC VDC ma ma(typ.) ma(typ.) ma(typ.) VDC μf % MTQZ50-72S05 Doc. EC-0094 FEATURES Industrial Standard Quarter Brick Package Wide Input Range 43-101VDC & 66-1VDC Excellent Efficiency up to 92% I/O Isolation 3000VAC with Reinforced Insulation Operating Ambient Temp.

More information

DPX30-xxDxx DC-DC Converter Module 9.5 ~ 18 VDC and 18 ~ 36 VDC and 36~ 75 VDC input; ±12 to ±15 VDC Dual Output; 30 Watts Output Power

DPX30-xxDxx DC-DC Converter Module 9.5 ~ 18 VDC and 18 ~ 36 VDC and 36~ 75 VDC input; ±12 to ±15 VDC Dual Output; 30 Watts Output Power DC-DC Converter Module 9.5 ~ 18 VDC and 18 ~ 36 VDC and 36~ 75 VDC input; ±12 to ±15 VDC Dual Output; 30 Watts Output Power FEATURES NO MINIMUM LOAD REQUIRED 1600VDC INPUT TO OUTPUT ISOLATION SCREW TERMINALS

More information

1A Linear Li-Ion Battery Charger in SOP8

1A Linear Li-Ion Battery Charger in SOP8 1A Linear Li-Ion Battery Charger in SOP8 FP8103 General Description The FP8103 is a standalone linear Li-ion battery charger with exposed pad SOP8 package. With few external components, FP8103 is well

More information

MJWI20 SERIES FEATURES PRODUCT OVERVIEW. DC/DC Converter 20W, Highest Power Density MINMAX MJWI20 Series

MJWI20 SERIES FEATURES PRODUCT OVERVIEW.  DC/DC Converter 20W, Highest Power Density MINMAX MJWI20 Series DC/DC 2W, Highest Power Density MINMAX MJWI2 Series MJWI2 SERIES DC/DC CONVERTER 2W, Highest Power Density FEATURES Smallest Encapsulated 2W! Package Size 1. x1. x.4 Ultra-wide 4:1 Input Range Very high

More information

PART 1. Power Management

PART 1. Power Management PART 1 Power Management Section 1 Power Management Tutorials Ceramic input capacitors can cause overvoltage transients (1) When it comes to input filtering, ceramic capacitors are a great choice. They

More information

1A/800mA Standalone Linear Li-Ion Battery Charger. Features

1A/800mA Standalone Linear Li-Ion Battery Charger. Features 1A/800mA Standalone Linear Li-Ion Battery Charger General Description The is a complete constant-current/constant- voltage linear charger for single cell lithium-ion batteries. Its ESOP8 package and low

More information

DPX30-xxWSxx DC-DC Converter Module 10 ~ 40VDC, 18 ~ 75VDC input; 3.3 to 28VDC Single Output 30 Watts Output Power

DPX30-xxWSxx DC-DC Converter Module 10 ~ 40VDC, 18 ~ 75VDC input; 3.3 to 28VDC Single Output 30 Watts Output Power DC-DC Converter Module 10 ~ 40VDC, 18 ~ 75VDC input; 3.3 to 28VDC Single Output 30 Watts Output Power FEATURES NO MINIMUM LOAD REQUIRED 1600VDC INPUT TO OUTPUT ISOLATION SCREW TERMINALS FOR INPUT AND OUTPUT

More information

DPX30-xxWDxx DC-DC Converter Module 10 ~ 40VDC, 18 ~ 75VDC input; ±12 to ±15 VDC Dual Output; 30 Watts Output Power

DPX30-xxWDxx DC-DC Converter Module 10 ~ 40VDC, 18 ~ 75VDC input; ±12 to ±15 VDC Dual Output; 30 Watts Output Power DC-DC Converter Module 10 ~ 40VDC, 18 ~ 75VDC input; ±12 to ±15 VDC Dual Output; 30 Watts Output Power FEATURES NO MINIMUM LOAD REQUIRED 1600VDC INPUT TO OUTPUT ISOLATION SCREW TERMINALS FOR INPUT AND

More information

For capacitance values > 33000µF, add the value of: 3 CV (µa) max. after 5 minutes; C = Capacitance in µf, V = WV ~ k 10k

For capacitance values > 33000µF, add the value of: 3 CV (µa) max. after 5 minutes; C = Capacitance in µf, V = WV ~ k 10k T-UP Series 85 C, 3000 hours 4 or 5 terminal mounting provides stability and keyed polarity Extended CV ratings Can vent construction RoHS Compliant Rated Working Voltage: Operating Temperature: Nominal

More information

Type AVS SMT Aluminum Electrolytic Capacitors - General Purpose, 85 C

Type AVS SMT Aluminum Electrolytic Capacitors - General Purpose, 85 C General Purpose Filtering, Bypassing, Power Supply Decoupling Specifications Operating Temperature: Rated voltage: Capacitance: D.F. (@ 20 C): Capacitance Tolerance: Leakage Current: Ripple Current Multipliers:

More information

A4063. AiT Semiconductor Inc. APPLICATION ORDERING INFORMATION TYPICAL APPLICATION

A4063. AiT Semiconductor Inc.   APPLICATION ORDERING INFORMATION TYPICAL APPLICATION DESCRIPTION The is a 2A Li-Ion battery switching charger intended for 5V adapters. Low power dissipation, an internal MOSFET and its compact package with minimum external components requirement makes the

More information

Output Current Input Current Reflected Ripple. Efficiency (typ.) Load VDC VDC ma ma ma(typ.) ma(typ.) ma (typ.) VDC μf % MKW40-12S033

Output Current Input Current Reflected Ripple. Efficiency (typ.) Load VDC VDC ma ma ma(typ.) ma(typ.) ma (typ.) VDC μf % MKW40-12S033 MKW SERIES DC/DC CONVERTER W, Highest Power Density FEATURES Smallest Encapsulated W Ultra-compact 2" X 1" Package Wide 2:1 Input Voltage Range Fully Regulated Output Voltage Excellent Efficiency up to

More information

XC62FJ Series GENERAL DESCRIPTION APPLICATIONS. FEATURES Maximum Output Current : 200mA TYPICAL PERFORMANCE CHARACTERISTICS

XC62FJ Series GENERAL DESCRIPTION APPLICATIONS. FEATURES Maximum Output Current : 200mA TYPICAL PERFORMANCE CHARACTERISTICS ETR03086-001 10V Input, 200mA Low Consumption Current Regulator GENERAL DESCRIPTION The XC62FJ series is a highly precise, low power consumption, positive voltage regulator manufactured with CMOS and laser

More information

WATT MBH SERIES DC/DC CONVERTERS

WATT MBH SERIES DC/DC CONVERTERS Features Delivers up to 2100 Watts Efficiency up to 97 Groundbreaking low profile compact 9.0 L x 6.5 W x 1.25 H package Only 3.3 lbs No minimum load required Fixed frequency operation at 400 khz Fully

More information

ZSPM401x Application Note - Circuit Layout and Component Selection Contents

ZSPM401x Application Note - Circuit Layout and Component Selection Contents ZSPM401x Application Note - Circuit Layout and Component Selection Contents 1 Introduction... 2 2 Typical Application Schematic... 2 3 Printed Circuit Board (PCB) Layout Guidelines... 3 4 Recommended Bill

More information

HM5061 Max.1.6A Li-ion Switching Charger IC

HM5061 Max.1.6A Li-ion Switching Charger IC Max.1.6A Li-ion Switching Charger IC DESCRIPTION The HM5061 is a 1.6A Li-Ion battery switching charger intended for 5V adapters. Low power dissipation, an internal MOSFET and its compact package with minimum

More information

LP2981 Micropower 100 ma Ultra Low-Dropout Regulator in SOT-23 Package

LP2981 Micropower 100 ma Ultra Low-Dropout Regulator in SOT-23 Package LP2981 Micropower 100 ma Ultra Low-Dropout Regulator in SOT-23 Package General Description The LP2981 is a 100 ma, fixed-output voltage regulator designed specifically to meet the requirements of battery-powered

More information

DPX15-xxWDxx Dual Output: DC-DC Converter Module 9.5 ~ 36VDC, 18 ~ 75VDC input; ±5 to ±15 VDC Dual Output; 15 Watts Output Power

DPX15-xxWDxx Dual Output: DC-DC Converter Module 9.5 ~ 36VDC, 18 ~ 75VDC input; ±5 to ±15 VDC Dual Output; 15 Watts Output Power DPX15-xxWDxx Dual Output: DC-DC Converter Module 9.5 ~ 36VDC, 18 ~ 75VDC input; ±5 to ±15 VDC Dual Output; 15 Watts Output Power FEATURES NO MINIMUM LOAD REQUIRED 1600VDC INPUT TO OUTPUT ISOLATION SCREW

More information

800mA Linear Li-Ion Battery Charger

800mA Linear Li-Ion Battery Charger 800mA Linear Li-Ion Battery Charger General Description The is a complete constant-current/constant- voltage linear charger for single cell lithium-ion batteries. Its package and low external component

More information